most citedBi-static LIDAR systems operating in the presence of oceanic turbulence

19 citations · 19 across the 2 of their papers we have counts for

collaborators

5 papers

physics.ao-ph2020

Oceanic non-Kolmogorov optical turbulence and spherical wave propagation

Jinren Yao, Hantao Wang, Huajun Zhang +4

Light propagation in turbulent media is conventionally studied with the help of the spatio-temporal power spectra of the refractive index fluctuations. In particular, for natural w…

physics.ao-ph2020

Spatial power spectrum of natural water turbulence with any average temperature, salinity concentration and light wavelength

Jinren Yao, Mohammed Elamassie, Olga Korotkova

The power spectrum of water optical turbulence is shown to vary with its average temperature and average salinity concentration $\left\langle S \righ…

physics.ao-ph2020

Outer scale of the wide-range Prandtl/Schmidt number spectrum on beam wander for oceanic optical turbulence

Jian-Dong Cai, Jin-Ren Yao, Han-Tao Wang +3

Light propagation in ocean is influenced by the refractive-index which is related to temperature, salinity, outer-scale, etc. Based on Hill's model 1 (H1), two kinds of oceanic ref…

physics.ao-ph201919 cited

Bi-static LIDAR systems operating in the presence of oceanic turbulence

Olga Korotkova, Jin-Ren Yao

Optical turbulence occurring in the oceanic waters may be detrimental for light beams used in the short-link communication and sensing systems, and, in particular, in underwater LI…

physics.ao-ph2019

Wide-range Prandtl/Schmidt number power spectrum of optical turbulence and its application to oceanic light propagation

Jin-Ren Yao, Hua-Jun Zhang, Ruo-Nan Wang +3

Light influenced by the turbulent ocean can be fully characterized with the help of the power spectrum of the water's refractive index fluctuations, resulting from the combined eff…